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GOAL: Towards Understanding of Graphic Objects from Architectural to Line Drawings

机译:目标:从建筑到线条图理解图形对象

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Understanding of graphic objects has become a problem of pertinence in today's context of digital documentation and document digitization, since graphic information in a document image may be present in several forms, such as engineering drawings, architectural plans, musical scores, tables, charts, extended objects, hand-drawn sketches, etc. There exist quite a few approaches for segmentation of graphics from text, and also a separate set of techniques for recognizing a graphics and its characteristic features. This paper introduces a novel geometric algorithm that performs the task of segmenting out all the graphic objects in a document image and subsequently also works as a high-level tool to classify various graphic types. Given a document image, it performs the text-graphics segmentation by analyzing the geometric features of the minimum-area isothetic polygonal covers of all the objects for varying grid spacing, g. As the shape and size of a polygonal cover depends on g, and each isothetic polygon is represented by an ordered sequence of its vertices, the spatial relationship of the polygons corresponding to a higher grid spacing with those corresponding to a lower spacing, is used for graphics segmentation and subsequent classification. Experimental results demonstrate its efficiency, elegance, and versatility.
机译:在当今的数字文档和文档数字化的背景下,对图形对象的理解已成为相关问题,因为文档图像中的图形信息可能以多种形式出现,例如工程图,建筑图,乐谱,表格,图表,扩展对象,手绘草图等。存在许多从文本中分割图形的方法,并且还有一套单独的识别图形及其特征的技术。本文介绍了一种新颖的几何算法,该算法执行将文档图像中的所有图形对象进行分割的任务,并且随后还可以用作对各种图形类型进行分类的高级工具。给定一个文档图像,它通过分析所有对象的最小面积等规多边形封面的几何特征来执行文本图形分割,以改变网格间距g。由于多边形覆盖物的形状和大小取决于g,并且每个等规多边形均由其顶点的有序序列表示,因此将对应于较高网格间距的多边形与对应较低网格间距的多边形的空间关系用于图形分割和后续分类。实验结果证明了其效率,优雅和多功能性。

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